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Fpga Development Jobs in Michigan (NOW HIRING)

Lead electrical engineering activities for the development of RF airborne avionics products from ... Support RF/hardware, hardware/software, FPGA, and system-level integration activities * Drive ...

This includes FPGA, PCB, harnesses, enclosures, controllers, sensors, motor/generators, inverters, and effectors. * Support development of hybrid power packs including designing, testing, and ...

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Fpga Development information

What is the difference between Fpga Development vs Digital Design Engineer?

AspectFpga DevelopmentDigital Design Engineer
Required CredentialsBachelor's in Electrical Engineering or Computer Engineering, FPGA certifications (optional)Bachelor's or higher in Electrical Engineering, Computer Engineering, or related fields
Work EnvironmentHardware-focused, FPGA labs, embedded systemsHardware and software integration, digital circuit design
Industry UsageTelecommunications, aerospace, defense, consumer electronicsConsumer electronics, automotive, industrial automation
Common Search/ComparisonFPGA design, FPGA programming, FPGA engineerDigital circuit design, digital systems engineer

Both Fpga Development and Digital Design Engineer roles involve designing digital systems, but Fpga Development specifically focuses on FPGA hardware programming and implementation, while Digital Design Engineers may work on broader digital circuit design across various platforms. Understanding these distinctions helps in choosing the right career path or job search focus.

Do FPGA development engineers make a lot of money?

FPGA development engineers typically earn competitive salaries that vary based on experience, location, and industry. Skilled engineers with expertise in hardware description languages like VHDL or Verilog and experience with FPGA tools tend to have higher earning potential. Salaries often range from mid to high six figures for experienced professionals in specialized fields.

Is FPGA development a good career?

FPGA development is a specialized field involving designing and implementing digital circuits using Field-Programmable Gate Arrays. It offers strong job prospects in industries like telecommunications, aerospace, and automotive, with demand for skills in hardware description languages such as VHDL and Verilog. The role often requires knowledge of digital design, debugging, and sometimes certifications, making it a viable career path for those interested in hardware engineering.

What are popular job titles related to Fpga Development jobs in Michigan?

For Fpga Development jobs in Michigan, the most frequently searched job titles are:

What job categories do people searching Fpga Development jobs in Michigan look for?

The top searched job categories for Fpga Development jobs in Michigan are:

What cities in Michigan are hiring for Fpga Development jobs?

Cities in Michigan with the most Fpga Development job openings:

Lead Electrical & RF Engineer

Acron Aviation

Grand Rapids, MI • On-site

Full-time

Posted 22 days ago


Job description

About Acron Aviation (Avionics - Surveillance):
Acron Aviation designs, engineers, and manufactures certified avionics systems that support safety-critical flight operations across commercial and military aviation. Within Avionics, the Surveillance product line develops and sustains systems that enable aircraft awareness, collision avoidance, and airspace interoperability. Our portfolio includes TCAS, Mode S transponders, ADS-B, and integrated surveillance solutions deployed across commercial, military, and rotorcraft platforms. This work is performed in highly regulated environments and demands deep expertise across systems, hardware, software, and RF throughout the full product lifecycle.
Job Title
Lead Electrical & RF Engineer - Surveillance
Position Summary
The Lead Electrical & RF Engineer is responsible for the technical leadership, architecture, development, certification support, and lifecycle management of advanced avionics systems spanning both electrical engineering and radio frequency (RF) domains.
This role leads electrical, RF, and hardware engineering activities for airborne products, including transponder, TCAS, surveillance, and communications systems, while ensuring compliance with aerospace standards and customer requirements.
The position serves as the primary technical authority for RF and electrical hardware development, requirements definition, and design execution, including oversight of external engineering partners and contract design organizations. The successful candidate will drive innovation in Size, Weight, Power, and Cost (SWaP-C) optimization, lead RF architecture and performance trade studies, leverage AI-enabled engineering tools to improve productivity and automation, and own the development of product hardware requirements and design documentation throughout the product lifecycle
Technical Leadership
    • Lead electrical engineering activities for the development of RF airborne avionics products from concept through certification and production
    • Define system architecture and allocate requirements across RF, analog, digital, mixed-signal, software, FPGA/firmware, mechanical, and systems engineering disciplines
    • Serve as technical lead for surveillance, communications, and collision avoidance products, including Mode S transponders, ADS-B systems, and TCAS equipment
    • Provide technical guidance, mentorship, and engineering oversight to multidisciplinary development teams across EE and RF domains
    • Support strategic product roadmaps and technology initiatives, including next-generation RF and avionics platform capabilities

RF Leadership & Integration
    • Lead RF architecture, design integration, and technical decision-making for avionics products
    • Establish RF performance requirements and budgets for gain, noise figure, linearity, selectivity, isolation, spurious response, dynamic range, and coexistence requirements
    • Drive RF trade studies and design reviews covering circuit design, layout, shielding, grounding, EMI/EMC, and environmental constraints
    • Coordinate RF validation, laboratory characterization, and system integration activities
    • Support certification readiness by ensuring RF-related design evidence, test coverage, and compliance artifacts are complete and defensible

Requirements Development & Ownership
    • Develop, maintain, and own Hardware Requirements Documents (HRDs) and associated derived requirements
    • Ensure traceability between customer, system, hardware, software, and certification requirements
    • Lead requirements decomposition, validation, verification planning, and change management activities
    • Establish acceptance criteria and verification methods for hardware requirements

Outsourced Development Oversight
    • Manage and provide technical oversight of outsourced engineering partners responsible for RF, electrical, and hardware development activities
    • Define statements of work, technical deliverables, schedules, design reviews, and acceptance criteria
    • Conduct design audits and technical reviews to ensure compliance with company standards and certification requirements
    • Coordinate technical communication between internal stakeholders and external development organizations
    • Assess supplier technical risks and implement mitigation strategies

Hardware Design & Development
    • Direct the design and development of complex digital, analog, mixed-signal, RF, and power electronics hardware
    • Review schematics, RF signal chain implementation, PCB layouts, component selections, engineering analyses, and test results
    • Ensure designs meet performance, reliability, manufacturability, maintainability, and certification objectives
    • Support RF/hardware, hardware/software, FPGA, and system-level integration activities
    • Drive design margins that support DO-160 environmental qualification and EMI/EMC robustness requirements

Product Optimization
    • Lead initiatives to reduce Size, Weight, Power, and Cost (SWaP-C) across avionics product portfolios
    • Drive design trade studies that balance performance, manufacturability, certification, and lifecycle objectives
    • Promote Design for Manufacturability, Design for Cost, Design for Test, and Design for Reliability principles
    • Establish engineering metrics and practices supporting next-generation avionics solutions

Artificial Intelligence & Engineering Automation
    • Champion the adoption of AI technologies to improve engineering productivity, quality, and development efficiency
    • Maintain a continuous improvement mindset and evaluate opportunities to streamline engineering workflows
    • Evaluate emerging AI technologies and integrate effective practices into engineering processes to reduce repetitive and low-value work

Verification & Validation
    • Lead hardware verification and validation activities throughout the product lifecycle, primarily through oversight of outsourced development partners
    • Review and approve test plans, procedures, reports, and qualification data
    • Support root cause analysis, troubleshooting, and corrective action investigations
    • Ensure complete verification coverage and certification evidence generation

Required Qualifications
    • Bachelor's degree in Electrical Engineering or a related engineering discipline
    • 10+ years of experience in aerospace, avionics, or safety-critical electronic product development
    • 5+ years of technical leadership experience leading complex avionics RF and electrical hardware development programs
    • Experience managing and overseeing external engineering design partners or contract development organizations
    • Strong understanding of RTCA DO-160 environmental qualification requirements and RF/EE integration challenges in airborne systems
    • Experience developing and managing hardware requirements documentation and requirements traceability
    • Expertise in digital, analog, mixed-signal, RF, and power electronics design
    • Experience supporting certification and regulatory compliance activities

Preferred Additional Skills
    • Master's degree in Electrical Engineering or related discipline
    • Experience with FAA, EASA, TSO, ETSO, and military avionics programs
    • Familiarity with DO-254, DO-178C, ARP4754A, and ARP4761 development processes
    • Deep experience with RF systems and surveillance technologies including Mode S Transponders, ADS-B, IFF, DME, TCAS, or ACAS
    • Experience implementing AI-assisted engineering workflows and automation solutions
    • Experience with DOORS requirements management
    • Experience with Altium design tools
    • Project leadership or engineering management experience

Key Competencies
    • Technical leadership
    • RF and electrical systems thinking
    • Requirements engineering
    • Supplier management
    • Product ownership
    • Strategic planning
    • Risk management
    • Cross-functional collaboration
    • AI-enabled engineering innovation
    • Continuous improvement mindset
    • Strong written and verbal communication skills
    • Ability to influence technical direction across organizations

Equal Opportunity Statement
Acron Aviation is proud to be an Affirmative Action and Equal Opportunity Employer. We are committed to treating all employees and applicants with respect and dignity and to maintaining a workplace free from unlawful discrimination. All applicants will be considered for employment regardless of race, color, religion, age, national origin, ancestry, ethnicity, gender (including pregnancy, childbirth, breastfeeding, or other related medical conditions), gender identity, gender expression, sexual orientation, marital status, veteran status, disability, genetic information, citizenship status, or any other legally protected characteristic.
Additional Information:
Acron Aviation maintains a drug-free workplace and conducts pre-employment substance abuse testing and background checks, where allowed by law. Acron Aviation is an E-Verify employer.
We may use artificial intelligence (AI) tools to support parts of the hiring process, such as reviewing applications, analyzing resumes, or assessing responses and identifying potential inconsistencies or verification signals in application materials based on available information. These tools assist our recruitment team but do not replace human judgment. Final hiring decisions are ultimately made by humans. If you would like more information about how your data is processed, please contact us.